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Factors in myocardial "perfusion" imaging with ultrafast MRI and Gd-DTPA administration
D Burstein1, E Taratuta, W J Manning
1Department of Radiology, Charles A. Dana Research Institute, Beth Israel Hospital and Harvard Medical School, Boston, Massachusetts 02215.
Abstract:
Ultrafast magnetic resonance imaging (MRI) and first pass observation of an interstitial contrast agent are currently being used to study myocardial perfusion. Image intensity, however, is a function of several parameters, including the delivery of the contrast agent to the interstitium (coronary flow rate and diffusion into the interstitium) and the relaxation properties of the tissue (contrast agent concentration, proton exchange rates, and relative intra- and extracellular volume fractions). In this study, image intensity during gadopentetate dimeglumine (Gd-DTPA) administration with T1-weighted ultrafast MR imaging was assessed in an isolated heart preparation. With increasing Gd-DTPA concentration, the steady-state myocardial image intensity increased but the time to reach steady state remained unchanged, resulting in an increased slope of image intensity change. A range of physiologic perfusion pressures (and resulting coronary flow rates) had insignificant effects on kinetics of Gd-DTPA wash-in or steady-state image intensity, suggesting that diffusion of Gd-DTPA into the interstitium is the rate limiting step in image intensity change with this preparation. Following global ischemia and reperfusion, transmural differences in the slope of image intensity change were apparent. However, the altered steady-state image intensity (due to postischemic edema) makes interpretation of this finding difficult. The studies described here demonstrate that although Gd-DTPA administration combined with ultrafast imaging may be a sensitive indicator of perfusion abnormalities, factors other than perfusion will affect image intensity. Extensive studies will be required before image intensity with this protocol is fully understood.
Insights
Ultrafast MRI with gadopentetate dimeglumine (Gd-DTPA) shows potential for detecting myocardial perfusion issues. However, image intensity is influenced by contrast agent diffusion and tissue properties, not just blood flow.
Area of Science:
- Cardiovascular Imaging
- Magnetic Resonance Imaging
- Physiology
Background:
- Myocardial perfusion is studied using ultrafast MRI and interstitial contrast agents.
- Image intensity depends on contrast delivery, tissue relaxation, and volume fractions.
Purpose of the Study:
- To assess image intensity changes during gadopentetate dimeglumine (Gd-DTPA) administration in an isolated heart model.
- To investigate the relationship between contrast concentration, perfusion pressure, and image intensity kinetics.
Main Methods:
- T1-weighted ultrafast MRI was used on an isolated heart preparation.
- Gadopentetate dimeglumine (Gd-DTPA) was administered, and image intensity was measured.
- Perfusion pressures were varied, and effects of ischemia/reperfusion were studied.
Main Results:
- Increased Gd-DTPA concentration raised myocardial image intensity but did not alter the time to reach steady state.
- Perfusion pressure variations had minimal impact on Gd-DTPA uptake kinetics or steady-state intensity.
- Diffusion into the interstitium appeared to be the rate-limiting step for image intensity changes.
- Post-ischemic edema complicated the interpretation of transmural differences in image intensity slopes.
Conclusions:
- Ultrafast MRI with Gd-DTPA shows promise for identifying perfusion abnormalities.
- Factors beyond perfusion, such as diffusion and tissue edema, significantly affect image intensity.
- Further research is needed to fully understand and utilize this imaging protocol.